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May 6, 2026The International Journal of Advanced Manufacturing Technology0 citationsOpen Access

Optimization of monumental sculptural processes through 3D modeling, CNC milling, and ceramic shell casting

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ICItahisa Pérez ConesaRCRut Cavero-LujánAHAlejandro Hernández-Pérez

Key Points

  • To document a hybrid workflow for producing a monumental bronze sculpture combining digital tools and traditional casting.
  • Utilized CNC-machined expanded polystyrene core
  • Coated core with technical wax
  • Performed localized acetone-dissolution to remove EPS
  • Assessed execution time, workload, and material use in workshop conditions
  • Achieved 55-60% reduction in wax model production time
  • Improved handling and workshop logistics
  • Enhanced continuity across assembled sections

Abstract

Abstract This study documents a hybrid workflow for producing a monumental bronze sculpture that combines digital tools with traditional artistic casting. Instead of the conventional route—armature construction, clay modelling, and sectional mould-making followed by wax reproduction—we propose a CNC-machined expanded polystyrene (EPS) core that is directly coated with technical wax. A hollow wax model suitable for ceramic shell casting is obtained by removing the EPS through a localised, controlled acetone-dissolution procedure, avoiding mechanical stress on the wax layers. Execution time, workload, material use, technical feasibility, and formal fidelity were assessed under real workshop conditions. The case study shows a reduction of approximately 55–60% in the time required to produce the wax model, alongside improvements in handling, workshop logistics, and continuity across assembled sections. The protocol is transferable to other large-format works, subject to access to digital modelling/CAM resources, CNC capacity, and appropriate safety measures for solvent use and waste management.

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Cite This Study

Conesa et al. (2026) studied this question.

synapsesocial.com/papers/69faa2b504f884e66b533510https://doi.org/10.1007/s00170-026-18238-8
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